Avanafil API CAS 330784-47-9 (S)-4-((3-Chloro-4-)Amino)-2-(2-()Pyrrolidin-1-Yl)-N-(Pyrimid
Avanafil API |
CAS No.: 330784-47-9 |
Purity: 99% |
Molecular weight: 483.95 g/mol |
Molecular formula: C₂₃H₂₆ClN₇O₃ |
Appearance:White to white crystalline powder |
Package: 1g,10g,100g,1000g |
Avanafil API CAS 330784-47-9 (S)-4-((3-Chloro-4-)Amino)-2-(2-()Pyrrolidin-1-Yl)-N-(Pyrimid
Purity:99%
Color:white to off-white
Form:powder
Package:10g 100g vacuum
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Avanafil API CAS 330784-47-9 (S)-4-((3-Chloro-4-)amino)-2-(2-)pyrrolidin-1-yl)-N-(pyrimid)
Description:
Avanafil (Zepeed)(CAS 330784-47-9) was approved by the Korean Health Ministry for the treatment of erectile dysfunction (ED) in August 2011. Avanafil is a highly selective type 5 phosphodiesterase (PDE5) inhibitor. Avanafil is reported to be the most selective PDE5 inhibitor on the market. The onset of Tmax and half-life also varies among the marketed PDE5 inhibitors. T has a Tmax at 1 h and a half-life of 3–5 h. V is somewhat similar with a Tmax of 0.6 h and a half-life of 4–6 h. T has the longest half-life among the marketed drugs with a half-life of 17 h. Avanafil has a fast onset of action reaching Tmax in 0.6 h with a half-life of 1.2 h. A synthesis of avanafil (TA-1790) is described in the patent literature. The main elimination route of avanafil is through the bile and feces. Avanafil was also found to be reabsorbed through enterohepatic recirculation.
Clinical Use:
Avanafil was originally discovered at Tanabe Seiyaku (now Mitsubishi Tanabe). JW Pharmaceutical (previously Choongwae Pharma) and VIVUS have since developed and launched avanafil, which is an oral PDE5 inhibitor for the treatment of erectile dysfunction (ED). Although many marketed PDE5 inhibitors are available for the treatment of ED, many patients are still unable to achieve the desired results and experience undesired side-effects with these existing medications. As such, second-generation PDE5 inhibitors with enhanced PDE5 selectivity, shorter systemic half-lives, and improved tolerability are desired. Developed to meet these criteria, Avanafil exhibited good oral bioavailability and PDE5 selectivity in both preclinical studies and clinical trials. Avanafil had a short onset of action (35 min) and short half-life (1.5 h).
Synthesis:
The synthesis presented is based on the published patent procedure and is outlined in the scheme. Commercially available 4-chloro-2-(methylsulfanyl)pyrimidine- 5-carboxylic acid ethyl ester (25) was treated with 3- chloro-4-methoxybenzylamine (26) and triethylamine at room temperature to give 4-benzylaminopyrimidine derivative 27 in 96% yield. Sulfide 27 was then oxidized with m-chloroperbenzoic acid (m-CPBA), followed bytreatment with L-prolinol and triethylamine to afford ethyl pyrimidinate 28 in 83% yield. This ester was then saponified with 10% sodium hydroxide to give pyrimidine- 5-carboxylic acid 29 in 80% yield, which then underwent conventional amide bond formation using 2-(aminomethyl) pyrimidine (29a), N-(3-dimethylaminopropal)-N0-ethylcarbodiimide hydrochloride (EDCI) and 1-hydroxybenzotriazole hydrate (HOBt) to give avanafil (IV) in 83% yield.
Metabolism:
Avanafil is metabolised in the liver mainly by the cytochrome P450 isoenzyme CYP3A4 and to a minor extent by the CYP2C isoform. Two major metabolites are produced, one of which is active. Avanafil is excreted as metabolites mainly in the faeces (approximately 63%) in the urine (approximately 21%).
Raw materials:
5-PyriMidinecarboxylic acid, 4-[[(3-chloro-4-)]aMino]-2-[(2S)-2-(hydroxyMethyl)- 1-pyrrolidinyl]--->2-PYRIMIDINEMETHANAMINE-->L-(+)-Prolinol
Uses:
Avanafil is a highly selective PDE5 inhibitor with IC50 of 1 nM.
A phosphodiesterase (PDE5) inhibitor, used to treat erectile dysfunction.
This product is phosphodiesterase 5(PDE5) inhibitor A preparation for the treatment of erectile dysfunction.
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